{"id":6064,"date":"2025-02-15T11:55:57","date_gmt":"2025-02-15T04:55:57","guid":{"rendered":"https:\/\/chemistry.ugm.ac.id\/?page_id=6064"},"modified":"2025-02-15T12:07:29","modified_gmt":"2025-02-15T05:07:29","slug":"publikasi-dosen-2021","status":"publish","type":"page","link":"https:\/\/chemistry.ugm.ac.id\/?page_id=6064","title":{"rendered":"Publikasi Dosen 2021"},"content":{"rendered":"<table width=\"610\">\n<tbody>\n<tr>\n<td width=\"34\">No<\/td>\n<td width=\"189\">Penulis<\/td>\n<td width=\"262\">Judul<\/td>\n<td width=\"125\">Nama Jurnal<\/td>\n<\/tr>\n<tr>\n<td>1<\/td>\n<td>Adhiputra, R., Utami, M., Suyono, E.A., &#8230; Pratiwi, A.S., Wijaya, K.<\/td>\n<td>Simultaneous Extraction and In-Situ Transesterification of Chlorella vulgaris Using Microwave-Assisted Method for Biodiesel Production<\/td>\n<td>Korean Journal of Materials Research,\u00a02021, 31(4), pp. 181\u2013187<\/td>\n<\/tr>\n<tr>\n<td>2<\/td>\n<td>Agustin, S., Wahyuni, E.T., Suparmo, Supriyadi, Cahyanto, M.N.<\/td>\n<td>Incorporation of pectin during biosynthesis of bacterial cellulose by Gluconacetobacter xylinus InaCC B404: Possibility for producing green food packaging<\/td>\n<td>Biodiversitas,\u00a02021, 22(5), pp. 2548\u20132553<\/td>\n<\/tr>\n<tr>\n<td>3<\/td>\n<td>Agustin, S., Wahyuni, E.T., Suparmo, Supriyadi, Cahyanto, M.N.<\/td>\n<td>Production and characterization of bacterial cellulose-alginate biocomposites as food packaging material<\/td>\n<td>Food Research,\u00a02021, 5(6), pp. 204\u2013210<\/td>\n<\/tr>\n<tr>\n<td>4<\/td>\n<td>Agustiningsih, D., Sofyana, M., Budiharjo, S., &#8230; Roto, R., Wibowo, R.A.<\/td>\n<td>Reaction times among batik workers: The influence of gender and occupational lead exposure<\/td>\n<td>International Journal of Environmental Research and Public Health,\u00a02021, 18(23), 12605<\/td>\n<\/tr>\n<tr>\n<td>5<\/td>\n<td>Andreani, A.S., Kunarti, E.S., Hashimoto, T., Hayashita, T., Santosa, S.J.<\/td>\n<td>Fast and selective colorimetric detection of Fe3+\u00a0based on gold nanoparticles capped with ortho-hydroxybenzoic acid<\/td>\n<td>Journal of Environmental Chemical Engineering,\u00a02021, 9(5), 105962<\/td>\n<\/tr>\n<tr>\n<td>6<\/td>\n<td>Aneu, A., Wijaya, K., Syoufian, A.<\/td>\n<td>Silica-Based Solid Acid Catalyst with Different Concentration of H2SO4\u00a0and Calcination Temperature: Preparation and Characterization<\/td>\n<td>Silicon,\u00a02021, 13(7), pp. 2265\u20132270<\/td>\n<\/tr>\n<tr>\n<td>7<\/td>\n<td>Arief, I., Pranowo, H.D., Mudasir, M., Wijaya, K.<\/td>\n<td>QSAR-Based Design of The More Potent Betulinic Acid Derivatives as HIV Maturation Inhibitor<\/td>\n<td>Chiang Mai University Journal of Natural Sciences,\u00a02021, 20(1), pp. 1\u201311<\/td>\n<\/tr>\n<tr>\n<td>8<\/td>\n<td>Arief, I., Pranowo, H.D., Mudasir, Wijaya, K.<\/td>\n<td>In silico prediction of betulinic acid derivatives\u2019 cytotoxicity: Relationship between topological descriptors and cc50 value<\/td>\n<td>Key Engineering Materials,\u00a02021, 884 KEM, pp. 282\u2013289<\/td>\n<\/tr>\n<tr>\n<td>9<\/td>\n<td>Arifin, M., Sudiono, S., Mudasir, M., Triyono, T.<\/td>\n<td>Adsorption of methylene blue dye using biosorbents based on humic acid cross-linked cellulose<\/td>\n<td>Key Engineering Materials,\u00a02021, 884 KEM, pp. 47\u201353<\/td>\n<\/tr>\n<tr>\n<td>10<\/td>\n<td>Ariyanti, D., Jumina, Iswantini, D., &#8230; Effendi, H., Athaya, F.G.<\/td>\n<td>C-butylcalix[4]resorcinarene octabenzoate and octasinnamate: The synthesized sunscreen compounds<\/td>\n<td>Rasayan Journal of Chemistry,\u00a02021, 14(3), pp. 1521\u20131527<\/td>\n<\/tr>\n<tr>\n<td>11<\/td>\n<td>Ariyanti, D., Jumina, Iswantini, D., &#8230; Nurhidayat, N., Effendi, H.<\/td>\n<td>The synthesized sunscreen compounds: C-heptylcalix[4]resorcinarene octabenzoate and octasinnamate<\/td>\n<td>AIP Conference Proceedings,\u00a02021, 2370, 020012<\/td>\n<\/tr>\n<tr>\n<td>12<\/td>\n<td>Astuti, E., Raharjo, T.J., Boangmanalu, P.M., &#8230; Waskitha, S.S.W., Solin, J.<\/td>\n<td>Synthesis, molecular docking, and evaluation of some new curcumin analogs as antimalarial agents<\/td>\n<td>Indonesian Journal of Chemistry,\u00a02021, 21(2), pp. 452\u2013461<\/td>\n<\/tr>\n<tr>\n<td>13<\/td>\n<td>Basuki, R., Rusdiarso, B., Santosa, S.J., Siswanta, D.<\/td>\n<td>Magnetite-Functionalized Horse Dung Humic Acid (HDHA) for the Uptake of Toxic Lead(II) from Artificial Wastewater<\/td>\n<td>Adsorption Science and Technology,\u00a02021, 2021, 5523513<\/td>\n<\/tr>\n<tr>\n<td>14<\/td>\n<td>Basuki, R., Rusdiarso, B., Santosa, S.J., Siswanta, D.<\/td>\n<td>The dependency of kinetic parameters as a function of initial solute concentration: New insight from adsorption of dye and heavy metals onto humic-like modified adsorbents<\/td>\n<td>Bulletin of Chemical Reaction Engineering and Catalysis,\u00a02021, 16(4), pp. 773\u2013795<\/td>\n<\/tr>\n<tr>\n<td>15<\/td>\n<td>Bikharudin, A., Sutarno, S., Kamiya, Y., Nuryono, N.<\/td>\n<td>Effect of thermal treatment on physico-chemical properties of white mineral trioxide aggregate synthesized from limestone precipitate calcium carbonate<\/td>\n<td>Key Engineering Materials,\u00a02021, 884 KEM, pp. 290\u2013297<\/td>\n<\/tr>\n<tr>\n<td>16<\/td>\n<td>Cahyandaru, N., Wahyuni, E.T., Nuryono<\/td>\n<td>Performance improvement of tetraethylorthosilicate consolidated andesite rock by adding titanium tetraisopropoxyde and silica particles<\/td>\n<td>Indonesian Journal of Chemistry,\u00a02021, 21(1), pp. 24\u201336<\/td>\n<\/tr>\n<tr>\n<td>17<\/td>\n<td>Chasanah, U., Trisunaryanti, W., Triyono, Oktaviano, H.S., Fatmawati, D.A.<\/td>\n<td>The performance of green synthesis of graphene oxide prepared by modified hummers method with oxidation time variation<\/td>\n<td>Rasayan Journal of Chemistry,\u00a02021, 14(3), pp. 2017\u20132023<\/td>\n<\/tr>\n<tr>\n<td>18<\/td>\n<td>D. Lestari, N., T. Wahyuni, E., H. Aprilita, N.<\/td>\n<td>Visible light antibacterial activity of tio2-ag prepared from radiophotography wastewater<\/td>\n<td>Iranian Journal of Chemistry and Chemical Engineering,\u00a02021, 40(3), pp. 866\u2013871<\/td>\n<\/tr>\n<tr>\n<td>19<\/td>\n<td>Destiarti, L., Kartini, I., Riyanto, Roto, Mudasir<\/td>\n<td>Risk analysis and solution of using graphene: Material, synthesis, and application (Mini review)<\/td>\n<td>IOP Conference Series: Earth and Environmental Science,\u00a02021, 926(1), 012054<\/td>\n<\/tr>\n<tr>\n<td>20<\/td>\n<td>Dwiyanna, R., Roto, R., Suwondo, K.P., Wahyuni, E.T.<\/td>\n<td>Enhanced photocatalytic degradation of remazol black under visible light illumination through s doped tio2\u00a0(S-tio2) nanoparticles: Operational factors and kinetic study<\/td>\n<td>Global Nest Journal,\u00a02021, 23(2), pp. 323\u2013332<\/td>\n<\/tr>\n<tr>\n<td>21<\/td>\n<td>Dwiyanna, R., Roto, R., Wahyuni, E.T.<\/td>\n<td>Remazol Black Decontamination Study Using a Novel One-Pot Synthesized S and Co Co-Doped TiO2\u00a0Photocatalyst<\/td>\n<td>Photochem,\u00a02021, 1(3), pp. 488\u2013504<\/td>\n<\/tr>\n<tr>\n<td>22<\/td>\n<td>Fadillah, N.D., Sri Kunarti, E., Kartini, I.<\/td>\n<td>Degradation of titan yellow using zno\/ag embedded with fe3o4 nanoparticles under visible light-induced<\/td>\n<td>Key Engineering Materials,\u00a02021, 884 KEM, pp. 54\u201359<\/td>\n<\/tr>\n<tr>\n<td>23<\/td>\n<td>Fakih, T.M., Kurniawan, F., Yusuf, M., Mudasir, M., Tjahjono, D.H.<\/td>\n<td>Molecular dynamics of cobalt protoporphyrin antagonism of the cancer suppressor REV-ERB\u03b2<\/td>\n<td>Molecules,\u00a02021, 26(11), 3251<\/td>\n<\/tr>\n<tr>\n<td>24<\/td>\n<td>Fatmarahmi, D.C., Susidarti, R.A., Swasono, R.T., Rohman, A.<\/td>\n<td>Identification and quantification of metamizole in traditional herbal medicines using spectroscopy ftir-atr combined with chemometrics<\/td>\n<td>Research Journal of Pharmacy and Technology,\u00a02021, 14(8), pp. 4413\u20134419<\/td>\n<\/tr>\n<tr>\n<td>25<\/td>\n<td>Fatmawati, D.A., Triyono, T., Trisunaryanti, W., Oktaviano, H.S., Chasanah, U.<\/td>\n<td>The influence of permanganate enhancement to graphite on chemical structure and properties of graphene oxide material generated by improved tour method<\/td>\n<td>Indonesian Journal of Chemistry,\u00a02021, 21(5), pp. 1086\u20131096<\/td>\n<\/tr>\n<tr>\n<td>26<\/td>\n<td>Fatmawati, D.A., Triyono, Trisunaryanti, W., Oktaviano, H.S., Chasanah, U.<\/td>\n<td>The study of partially and fully oxidized graphene oxide prepared by green synthesis for wide-scale fabrication<\/td>\n<td>Rasayan Journal of Chemistry,\u00a02021, 14(3), pp. 2129\u20132135<\/td>\n<\/tr>\n<tr>\n<td>27<\/td>\n<td>Fauzi, W.P., Kurniawan, R., Sudiono, S., Prasetyo, N., Syoufian, A.<\/td>\n<td>Photodegradation of Phenol under Visible Light Irradiation Using Cu-N-codoped ZrTiO4\u00a0Composite as a High-Performance Photocatalyst<\/td>\n<td>Indonesian Journal of Chemistry,\u00a02024, 24(2), pp. 519\u2013529<\/td>\n<\/tr>\n<tr>\n<td>28<\/td>\n<td>Fawrin, H., Marlina, L.A., Hutama, A.S., Trisunaryanti, W.<\/td>\n<td>Investigations of the influence of non-metal dopants on the electronic and photocatalytic properties of ZrTiO4\u00a0by density functional theory calculations<\/td>\n<td>Computational Condensed Matter,\u00a02021, 29, e00607<\/td>\n<\/tr>\n<tr>\n<td>29<\/td>\n<td>Firmansyah, Kartini, I., Sutarno, Ruslan<\/td>\n<td>Effect of additive polarity on the stability of organic-inorganic hybrid CH3NH3PbI3perovskite thin film<\/td>\n<td>Journal of Physics: Conference Series,\u00a02021, 1763(1), 012032<\/td>\n<\/tr>\n<tr>\n<td>30<\/td>\n<td>Fitriastuti, D., Alfiyah, V., Mustofa, Jumina, Mardjan, M.I.D.<\/td>\n<td>Synthesis of 1-(4-ethoxy-3-methoxybenzyl)-1,10-phenanthrolin-1-ium bromide and its evaluation as antiplasmodium through heme polymerization inhibitory activity (hpia) assay<\/td>\n<td>Makara Journal of Science,\u00a02021, 25(1), pp. 8\u201312, 2<\/td>\n<\/tr>\n<tr>\n<td>31<\/td>\n<td>Fitriastuti, D., Alfiyah, V., Mustofa, Jumina, Mardjan, M.I.D.<\/td>\n<td>Synthesis of 1-(4-ethoxy-3-methoxybenzyl)-1,10-phenanthrolin-1-ium bromide and its evaluation as antiplasmodium through heme polymerization inhibitory activity (hpia) assay<\/td>\n<td>Makara Journal of Science,\u00a02021, 25(1), pp. 8\u201312, 2<\/td>\n<\/tr>\n<tr>\n<td>32<\/td>\n<td>Gurning, K., Haryadi, W., Sastrohamidjojo, H.<\/td>\n<td>Isolation and characterization of antioxidant compounds of bangun-bangun (Coleus amboinicus, l.) leaves from north sumatera, indonesia<\/td>\n<td>Rasayan Journal of Chemistry,\u00a02021, 14(1), pp. 248\u2013253<\/td>\n<\/tr>\n<tr>\n<td>33<\/td>\n<td>Gusrizal, G., Zaharah, T.A., Shofiyani, A., Santosa, S.J.<\/td>\n<td>Waste from Argentometric Determination of Chloride as a Source of Silver in the Synthesis of p-Hydroxybenzoic Acid Capped Silver Nanoparticles<\/td>\n<td>ChemistrySelect,\u00a02021, 6(23), pp. 5763\u20135770<\/td>\n<\/tr>\n<tr>\n<td>34<\/td>\n<td>Hadiarti, D., Haryadi, W., Matsjeh, S., Swasono, R.T.<\/td>\n<td>Understanding phytochemical roles on \u03b1-glucosidase inhibitory activity based on metabolomic approach of premna serratifolia leaves from west borneo, indonesia<\/td>\n<td>Rasayan Journal of Chemistry,\u00a02021, 14(2), pp. 1216\u20131222<\/td>\n<\/tr>\n<tr>\n<td>35<\/td>\n<td>Hanifa, A., Nadia, A., Saputri, W.D., Syoufian, A., Wijaya, K.<\/td>\n<td>Performance of ni-mo sulfated nanozirconia catalyst for conversion of waste cooking oil into biofuel via hydrocracking process<\/td>\n<td>Materials Science Forum,\u00a02021, 1045 MSF, pp. 79\u201389<\/td>\n<\/tr>\n<tr>\n<td>36<\/td>\n<td>Harumi, M., Kurniawan, R., Saputri, A., &#8230; Ardini, M.A., Sudiono, S.<\/td>\n<td>Study of mangosteen peel (Garcinia mangostana l.) waste capability to recover au(iii) and ag(i) in aqueous solution<\/td>\n<td>Indonesian Journal of Chemistry,\u00a02021, 21(1), pp. 251\u2013258<\/td>\n<\/tr>\n<tr>\n<td>37<\/td>\n<td>Haryadi, W., Pranowo, H.D., Anwar, C.<\/td>\n<td>Molecular docking of synthetic flavone, flavanone and chalcone series with HER2 and CDK8 as anticancer candidate<\/td>\n<td>AIP Conference Proceedings,\u00a02021, 2360, 050024<\/td>\n<\/tr>\n<tr>\n<td>38<\/td>\n<td>Hastuti, L.P., Kusumaatmaja, A., Kartini, I.<\/td>\n<td>Fabrication of electrospun multi-walled carbon nanotube\/tio2 nanofiber<\/td>\n<td>Key Engineering Materials,\u00a02021, 884 KEM, pp. 67\u201373<\/td>\n<\/tr>\n<tr>\n<td>39<\/td>\n<td>Hidayat, H., Haryadi, W., Raharjo, T.J.<\/td>\n<td>MODELING STRUCTURE OF Glucose-6-phosphate dehydrogenase FROM Leuconostoc mesenteroides STRAIN K7<\/td>\n<td>Rasayan Journal of Chemistry,\u00a02021, 14(4), pp. 2613\u20132621<\/td>\n<\/tr>\n<tr>\n<td>40<\/td>\n<td>Hidayat, Y., Rahmawati, F., Nurcahyo, I.F., Prasetyo, N., Pranowo, H.D.<\/td>\n<td>Hybrid forces molecular dynamics on the lability, dynamics and \u201cStructure breaking effect\u201d of Cs+\u00a0in liquid ammonia<\/td>\n<td>Bulletin of the Chemical Society of Japan,\u00a02021, 94(1), pp. 204\u2013208<\/td>\n<\/tr>\n<tr>\n<td>41<\/td>\n<td>Huda, B.N., Wahyuni, E.T., Mudasir, M.<\/td>\n<td>Eco-friendly immobilization of dithizone on coal bottom ash for the adsorption of lead(II) ion from water<\/td>\n<td>Results in Engineering,\u00a02021, 10, 100221<\/td>\n<\/tr>\n<tr>\n<td>42<\/td>\n<td>Huda, M.B., Astuti, E., Raharjo, T.J.<\/td>\n<td>Synthesis of mono-ketone curcumin analogs from 3-benzyloxybenzaldehyde and their activity assay as inhibitor of \u03b1-amylase<\/td>\n<td>Key Engineering Materials,\u00a02021, 884, pp. 304\u2013311<\/td>\n<\/tr>\n<tr>\n<td>43<\/td>\n<td>Hutama, A.S., Chou, C.-P., Nishimura, Y., Witek, H.A., Irle, S.<\/td>\n<td>Density-functional tight-binding parameters for bulk zirconium: A case study for repulsive potentials<\/td>\n<td>Journal of Physical Chemistry A,\u00a02021, 125(10), pp. 2184\u20132196<\/td>\n<\/tr>\n<tr>\n<td>44<\/td>\n<td>Hutama, A.S., Marlina, L.A., Chou, C.-P., Irle, S., Hofer, T.S.<\/td>\n<td>Development of Density-Functional Tight-Binding Parameters for the Molecular Dynamics Simulation of Zirconia, Yttria, and Yttria-Stabilized Zirconia<\/td>\n<td>ACS Omega,\u00a02021, 6(31), pp. 20530\u201320548<\/td>\n<\/tr>\n<tr>\n<td>45<\/td>\n<td>Irmi, N.M., Purwono, B., Anwar, C.<\/td>\n<td>Synthesis of Symmetrical Acetophenone Azine Derivatives as Colorimetric and Fluorescent Cyanide Chemosensors<\/td>\n<td>Indonesian Journal of Chemistry,\u00a02021, 21(6), pp. 1337\u20131347<\/td>\n<\/tr>\n<tr>\n<td>46<\/td>\n<td>Ishartono, B., Suyanta, S., Kartini, I.<\/td>\n<td>Effect of zeolite to clay ratios on the formation of zeolite-clay-white cement composite cylinder as an encapsulant of urea fertilizer<\/td>\n<td>Key Engineering Materials,\u00a02021, 884 KEM, pp. 196\u2013203<\/td>\n<\/tr>\n<tr>\n<td>47<\/td>\n<td>Istiningrum, R.B., Santosa, S.J., Nuryono, N.<\/td>\n<td>PREPARATION OF MAGNETIC\/SILICA\/QUARTERNARY-CHITOSAN BY SOL-GEL METHOD AND ITS STABILITY IN VARIOUS pH MEDIUM<\/td>\n<td>Rasayan Journal of Chemistry,\u00a02021, 14(4), pp. 2767\u20132775<\/td>\n<\/tr>\n<tr>\n<td>48<\/td>\n<td>Jaman, A., Nuryono, N., Suyanta, S.<\/td>\n<td>The properties of white mineral trioxide aggregate (Wmta) made of rice husk ash silica and limestone calcium carbonate and the effect of silica particles addition<\/td>\n<td>Key Engineering Materials,\u00a02021, 884 KEM, pp. 274\u2013281<\/td>\n<\/tr>\n<tr>\n<td>49<\/td>\n<td>Janah, I.M., Roto, R., Siswanta, D.<\/td>\n<td>Very Stable EDTA-Stabilized Colloidal Silver Nanoparticles: The Role of Synthesis Parameters<\/td>\n<td>Journal of Photopolymer Science and Technology,\u00a02021, 34(6), pp. 587\u2013595<\/td>\n<\/tr>\n<tr>\n<td>50<\/td>\n<td>Julianus, J., Jumina, Mustofa<\/td>\n<td>Comparison of 3-carbethoxy-4-phenyl-but-3-en-2-one and methylene quinuclidinone as a ligand to reactivate mutant p53: Molecular docking study in three types of crystal structure mutant p53: 2BIM, 2JIY, and 2J21<\/td>\n<td>Research Journal of Pharmacy and Technology,\u00a02021, 14(6), pp. 3358\u20133364<\/td>\n<\/tr>\n<tr>\n<td>51<\/td>\n<td>Jumina, Amalina, I., Triono, S., &#8230; Ohto, K., Yamin, B.M.<\/td>\n<td>Preliminary Investigation of Organocatalyst Activity Based on C-Arylcalix[4]-2-Methylresorcinarene Sulfonic Acid Materials for Biodiesel Production<\/td>\n<td>Bulletin of the Korean Chemical Society,\u00a02021, 42(3), pp. 403\u2013409<\/td>\n<\/tr>\n<tr>\n<td>52<\/td>\n<td>Jumina, Kurniawan, Y.S., Purwono, B., &#8230; Winarno, A., Waluyo, J.<\/td>\n<td>Science and Technology Progress on the Desulfurization Process of Crude Oil<\/td>\n<td>Bulletin of the Korean Chemical Society,\u00a02021, 42(8), pp. 1066\u20131081<\/td>\n<\/tr>\n<tr>\n<td>53<\/td>\n<td>Jumina, Kurniawan, Y.S., Siswanta, D., &#8230; Waluyo, J., Ahmad, J.S.M.<\/td>\n<td>The origin, physicochemical properties, and removal technology of metallic porphyrins from crude oils<\/td>\n<td>Indonesian Journal of Chemistry,\u00a02021, 21(4), pp. 1023\u20131038<\/td>\n<\/tr>\n<tr>\n<td>54<\/td>\n<td>Jumina, Yasodhara, Y., Triono, S., &#8230; Chawla, H.M., Kumar, N.<\/td>\n<td>Preparation and evaluation of alpha-cellulose sulfate based new heterogeneous catalyst for production of biodiesel<\/td>\n<td>Journal of Applied Polymer Science,\u00a02021, 138(2), 49658<\/td>\n<\/tr>\n<tr>\n<td>55<\/td>\n<td>Juwono, H., Trisunaryanti, W., Efiyanti, L., &#8230; Suprapto, S., Ni&#8217;mah, Y.L.<\/td>\n<td>Conversion of polystyrene plastic waste and used palm oil co-reactant into liquid fuel using AL-MCM-41\/ceramics catalyst<\/td>\n<td>Rasayan Journal of Chemistry,\u00a02021, 14(2), pp. 1049\u20131056<\/td>\n<\/tr>\n<tr>\n<td>56<\/td>\n<td>Kartika, I.A., Cerny, M., Vandenbossche, V., &#8230; Yuliana, N.D., Sailah, I.<\/td>\n<td>Optimisation of concurrent Calophyllum oil-resin extraction and separation<\/td>\n<td>Research in Agricultural Engineering,\u00a02021, 67(2), pp. 84\u201391<\/td>\n<\/tr>\n<tr>\n<td>57<\/td>\n<td>Khabibi, K., Siswanta, D., Mudasir, M.<\/td>\n<td>Preparation, characterization, and in vitro hemocompatibility of glutaraldehyde-crosslinked chitosan\/carboxymethylcellulose as hemodialysis membrane<\/td>\n<td>Indonesian Journal of Chemistry,\u00a02021, 21(5), pp. 1120\u20131131<\/td>\n<\/tr>\n<tr>\n<td>58<\/td>\n<td>Kunarti, E.S., Kartini, I., Mardjan, M.I.D., Prameswari, E.H.<\/td>\n<td>Sulfur-doped-titania coated on magnetite as magnetically recoverable photocatalyst for the UV-visible light-assisted-degradation of Congo red solution<\/td>\n<td>Rasayan Journal of Chemistry,\u00a02021, 14(2), pp. 1199\u20131207<\/td>\n<\/tr>\n<tr>\n<td>59<\/td>\n<td>KUNARTI, E.S., ROTO, R., SUTARNO, S., BUDI, I.S., MARDIANSYAH, M.<\/td>\n<td>Effective photocatalytic degradation of nitrobenzene by magnetite modified titania composite<\/td>\n<td>Asian Journal of Chemistry,\u00a02021, 33(6), pp. 1319\u20131324<\/td>\n<\/tr>\n<tr>\n<td>60<\/td>\n<td>Kuncaka, A., Arvianto, R.I., Latifa, A.S.R.B., &#8230; Suratman, A., Triono, S.<\/td>\n<td>Analysis and characterization of solid and liquid organic fertilizer from hydrothermal carbonization (Htc) of chicken feather and blood waste<\/td>\n<td>Indonesian Journal of Chemistry,\u00a02021, 21(3), pp. 651\u2013658<\/td>\n<\/tr>\n<tr>\n<td>61<\/td>\n<td>KUNCAKA, A., RAMBE, M.R., ISLAM, H.P., &#8230; SURATMAN, A., MUSLEM<\/td>\n<td>Preparation and characterization of composite from poly(vinyl chloride) hydrochar and hydrolyzate of keratin from chicken feather by hydrothermal carbonization<\/td>\n<td>Asian Journal of Chemistry,\u00a02021, 33(10), pp. 2483\u20132488<\/td>\n<\/tr>\n<tr>\n<td>62<\/td>\n<td>Kurniawan, Y.S., Imawan, A.C., Stansyah, Y.M., Wahyuningsih, T.D.<\/td>\n<td>Application of activated bentonite impregnated with PdO as green catalyst for acylation reaction of aromatic compounds<\/td>\n<td>Journal of Environmental Chemical Engineering,\u00a02021, 9(4), 105508<\/td>\n<\/tr>\n<tr>\n<td>63<\/td>\n<td>Kurniawan, Y.S., Priyangga, K.T.A., Jumina, &#8230; Fatimi, H.A., Julianus, J.<\/td>\n<td>An update on the anticancer activity of xanthone derivatives: A review<\/td>\n<td>Pharmaceuticals,\u00a02021, 14(11), 1144<\/td>\n<\/tr>\n<tr>\n<td>64<\/td>\n<td>Kurniawan, Y.S., Sathuluri, R.R., Ohto, K., &#8230; Miyazaki, M., Jumina, J.<\/td>\n<td>New concept for the study of the fluid dynamics of lithium extraction using calix[4]arene derivatives in t-type microreactor systems<\/td>\n<td>Separations,\u00a02021, 8(5), 70<\/td>\n<\/tr>\n<tr>\n<td>65<\/td>\n<td>Kurniawan, Y.S., Thomas, K., Hendra, Jumina, Wahyuningsih, T.D.<\/td>\n<td>Green synthesis of alkyl 8-(2-butyl-5-octyl-1, 3-dioxolan-4-yl)octanoate derivatives as potential biolubricants from used frying oil<\/td>\n<td>ScienceAsia,\u00a02021, 47(1), pp. 64\u201371<\/td>\n<\/tr>\n<tr>\n<td>66<\/td>\n<td>Kusumawati, Y., Hutama, A.S., Wellia, D.V., Subagyo, R.<\/td>\n<td>Natural resources for dye-sensitized solar cells<\/td>\n<td>Heliyon,\u00a02021, 7(12), e08436<\/td>\n<\/tr>\n<tr>\n<td>67<\/td>\n<td>Kusumawati, Y., Ivansyah, A.L., Ali, B.T.I., &#8230; Hutama, A.S., Fansuri, H.<\/td>\n<td>Photophysical properties of ammonium, pyrrolidinium, piperidinium, imidazolium, and pyridinium as a guide to prepare ionic-organic hybrid materials<\/td>\n<td>Heliyon,\u00a02022, 8(3), e09121<\/td>\n<\/tr>\n<tr>\n<td>68<\/td>\n<td>Lestari, A.D.N., Siswanta, D., Martien, R., Mudasir, M.<\/td>\n<td>Release kinetics and antioxidant activity of \u03b2-carotene encapsulated in starch-chitosan\/tripolyphosphate matrices<\/td>\n<td>Rasayan Journal of Chemistry,\u00a02021, 14(3), pp. 1729\u20131735<\/td>\n<\/tr>\n<tr>\n<td>69<\/td>\n<td>Lestari, A.D.N., Siswanta, D., Martien, R., Mudasir, M.<\/td>\n<td>Zeta potential examination of \u03b2-carotene encapsulated in starch-chitosan\/tripoly-phosphate microparticles<\/td>\n<td>AIP Conference Proceedings,\u00a02021, 2349, 020032<\/td>\n<\/tr>\n<tr>\n<td>70<\/td>\n<td>Maftuhah, E.R.F., Suyanta, S., Santosa, S.J.<\/td>\n<td>A preliminary study on the selective detection of hypochlorite based on antiagregation of aunps<\/td>\n<td>Key Engineering Materials,\u00a02021, 884 KEM, pp. 353\u2013359<\/td>\n<\/tr>\n<tr>\n<td>71<\/td>\n<td>Mandela, J., Trisunaryanti, W., Triyono, Koketsu, M., Fatmawati, D.A.<\/td>\n<td>Hydrochloric acid and\/or sodium hydroxide-modified zeolite y for catalytic hydrotreating of \u03b1-cellulose bio-oil<\/td>\n<td>Indonesian Journal of Chemistry,\u00a02021, 21(4), pp. 787\u2013796<\/td>\n<\/tr>\n<tr>\n<td>72<\/td>\n<td>Mardjan, M.I.D.<\/td>\n<td>Bicyclic 5-6 Systems With One Bridgehead (Ring Junction) Nitrogen Atom: One Extra Heteroatom 0:1<\/td>\n<td>Comprehensive Heterocyclic Chemistry IV,\u00a02021, pp. 622\u2013658<\/td>\n<\/tr>\n<tr>\n<td>73<\/td>\n<td>Melinda, Y.N., Widada, J., Wahyuningsih, T.D., &#8230; Damayanti, E., Mustofa, M.<\/td>\n<td>Metabologenomics approach to the discovery of novel compounds from Streptomyces sp. GMR22 as anti-SARS-CoV-2 drugs<\/td>\n<td>Heliyon,\u00a02021, 7(11), e08308<\/td>\n<\/tr>\n<tr>\n<td>74<\/td>\n<td>Mizuguchi, H., Taniguchi, Y., Suherman, S., &#8230; Takayanagi, T., Suzuki, Y.<\/td>\n<td>An Improved Reflection Colorimeter Integrated with a Coaxial Optical-fiber Cable for Highly Sensitive Solid-phase Colorimetry Using a Membrane Filter<\/td>\n<td>Analytical Sciences,\u00a02021, 37(7), pp. 1045\u20131048<\/td>\n<\/tr>\n<tr>\n<td>75<\/td>\n<td>Mudasir, M., Rahmayuni, F., Sudiono, S.<\/td>\n<td>Removal of pb(Ii) ion from aqueous solution using dithizone-immobilized natural bentonite<\/td>\n<td>Key Engineering Materials,\u00a02021, 884 KEM, pp. 10\u201316<\/td>\n<\/tr>\n<tr>\n<td>76<\/td>\n<td>Muliawati, N.T., Siswanta, D., Aprilita, N.H.<\/td>\n<td>Development of a simple Fe(II) ion colorimetric sensor from the immobilization of 1,10-phenanthroline in alginate\/pectin film<\/td>\n<td>Indonesian Journal of Chemistry,\u00a02021, 21(2), pp. 411\u2013420<\/td>\n<\/tr>\n<tr>\n<td>77<\/td>\n<td>Mulyono, K.K., Widianto, D., Wahyuningsih, T.D., Pratiwi, R., Widodo, W.<\/td>\n<td>Assessing the survival and ability of lactobacillus strains in coconut neera to bolster its suitability as a functional beverage after storage<\/td>\n<td>Food Research,\u00a02021, 5(5), pp. 220\u2013225<\/td>\n<\/tr>\n<tr>\n<td>78<\/td>\n<td>Muslim, M.I., Kurniawan, R., Pradipta, M.F., Trisunaryanti, W., Syoufian, A.<\/td>\n<td>The effects of manganese dopant content and calcination temperature on properties of titania-zirconia composite<\/td>\n<td>Indonesian Journal of Chemistry,\u00a02021, 21(4), pp. 882\u2013890<\/td>\n<\/tr>\n<tr>\n<td>79<\/td>\n<td>Nashrulloh, F., Anwar, C., Sulaiman, M., Budiarto, R.<\/td>\n<td>Analysis of potential and feasibility of riogas energy from palm oil mill effluent in penajam paser utara regency<\/td>\n<td>AIP Conference Proceedings,\u00a02021, 2376, 020012<\/td>\n<\/tr>\n<tr>\n<td>80<\/td>\n<td>Nitbani, F.O., Jumina, J., Tjitda, P.J.P., &#8230; Detha, A.I.R., Nurohmah, B.A.<\/td>\n<td>Synthesis of 2-monolaurin from pure lauric acid<\/td>\n<td>AIP Conference Proceedings,\u00a02021, 2370, 060005<\/td>\n<\/tr>\n<tr>\n<td>81<\/td>\n<td>Nugrahaningtyas, K.D., Heraldy, E., Rachmadani, Hidayat, Y., Kartini, I.<\/td>\n<td>Effect of synthesis and activation methods on the character of CoMo\/ultrastable Y-zeolite catalysts<\/td>\n<td>Open Chemistry,\u00a02021, 19(1), pp. 745\u2013754<\/td>\n<\/tr>\n<tr>\n<td>82<\/td>\n<td>Pambudi, F.I., Anderson, M.W., Attfield, M.P.<\/td>\n<td>Crystal growth of the core and rotated epitaxial shell of a heterometallic metal-organic framework revealed with atomic force microscopy<\/td>\n<td>Faraday Discussions,\u00a02021, 231, pp. 112\u2013126<\/td>\n<\/tr>\n<tr>\n<td>83<\/td>\n<td>Pambudi, F.I., Fajariatri, K.<\/td>\n<td>Understanding the crystal structure of heterometallic metal-organic frameworks in cadmium imidazolate framework-1 with periodic density functional theory<\/td>\n<td>Key Engineering Materials,\u00a02021, 884 KEM, pp. 363\u2013371<\/td>\n<\/tr>\n<tr>\n<td>84<\/td>\n<td>Pambudi, F.I., Prasetyo, N.<\/td>\n<td>Insight into the structure of the heulandite-type zeolite containing aromatic compounds using periodic density functional theory<\/td>\n<td>Materials Today Communications,\u00a02021, 26, 102028<\/td>\n<\/tr>\n<tr>\n<td>85<\/td>\n<td>Pangestika, A.W., Santosa, S.J., Sudiono, S.<\/td>\n<td>Humic acid immobilization on cellulose by crosslink method for cr(Iii) adsorption from aqueous solution<\/td>\n<td>Key Engineering Materials,\u00a02021, 884 KEM, pp. 25\u201331<\/td>\n<\/tr>\n<tr>\n<td>86<\/td>\n<td>Paramesti, C., Trisunaryanti, W., Sudiono, S., &#8230; Santoso, N.R., Fatmawati, D.A.<\/td>\n<td>The influence of metal loading amount on ni\/mesoporous silica extracted from lapindo mud templated by ctab for conversion of waste cooking oil into biofuel<\/td>\n<td>Bulletin of Chemical Reaction Engineering and Catalysis,\u00a02021, 16(1), pp. 22\u201330<\/td>\n<\/tr>\n<tr>\n<td>87<\/td>\n<td>Pertiwi, Y.E., Ulfa, M., Saraswati, T.E., Prasetyoko, D., Trisunaryanti, W.<\/td>\n<td>Understanding pore surface modification of sucrose-modified iron oxide\/silica mesoporous composite for degradation of methylene blue<\/td>\n<td>Bulletin of Chemical Reaction Engineering and Catalysis,\u00a02021, 16(3), pp. 459\u2013471<\/td>\n<\/tr>\n<tr>\n<td>88<\/td>\n<td>Pradipta, M.F., Pranowo, H.D., Alfiyah, V., Hutama, A.S.<\/td>\n<td>Theoretical study of oxygen atom adsorption on a polycyclic aromatic hydrocarbon using density-functional theory<\/td>\n<td>Indonesian Journal of Chemistry,\u00a02021, 21(5), pp. 1072\u20131085<\/td>\n<\/tr>\n<tr>\n<td>89<\/td>\n<td>Prasetyo, N.<\/td>\n<td>The effect of electron correlation in unraveling the hydration properties of Sc3+\u00a0in aqueous solution: A rigid body quantum mechanics\/molecular mechanics simulation study<\/td>\n<td>Journal of Molecular Liquids,\u00a02021, 331, 115735<\/td>\n<\/tr>\n<tr>\n<td>90<\/td>\n<td>Prasetyo, N., Pambudi, F.I.<\/td>\n<td>Toward hydrogen storage material in fluorinated zirconium metal-organic framework (MOF-801): A periodic density functional theory (DFT) study of fluorination and adsorption<\/td>\n<td>International Journal of Hydrogen Energy,\u00a02021, 46(5), pp. 4222\u20134228<\/td>\n<\/tr>\n<tr>\n<td>91<\/td>\n<td>Pratama, B.P., Supriyadi, Swasono, R.T., Pranoto, Y.<\/td>\n<td>Different leaf maturities and withering durations affect the antioxidant potential and aroma compound of Indonesian bay leaf [Syzygium polyanthum (Wight) Walp.]<\/td>\n<td>International Food Research Journal,\u00a02021, 28(6), pp. 1196\u20131203<\/td>\n<\/tr>\n<tr>\n<td>92<\/td>\n<td>Pratika, R.A., Wijaya, K., Trisunaryanti, W.<\/td>\n<td>Hydrothermal treatment of SO4\/TiO2\u00a0and TiO2\/CaO as heterogeneous catalysts for the conversion of Jatropha oil into biodiesel<\/td>\n<td>Journal of Environmental Chemical Engineering,\u00a02021, 9(6), 106547<\/td>\n<\/tr>\n<tr>\n<td>93<\/td>\n<td>Priastomo, Y., Morisada, S., Kawakita, H., Ohto, K., Jumina, J.<\/td>\n<td>Improved precious metal adsorption by introduction of carboxylic acid groups on methylene crosslinked calix[4]arene resin matrix<\/td>\n<td>Journal of Inclusion Phenomena and Macrocyclic Chemistry,\u00a02021, 101(1-2), pp. 51\u201361<\/td>\n<\/tr>\n<tr>\n<td>94<\/td>\n<td>Priyangga, K.T.A., Kurniawan, Y.S., Yuliati, L., &#8230; Wahyuningsih, T.D., Lintang, H.O.<\/td>\n<td>Novel luminescent Schiff\u2019s base derivative with an azo moiety for ultraselective and sensitive chemosensor of Fe3+\u00a0ions<\/td>\n<td>Luminescence,\u00a02021, 36(5), pp. 1239\u20131248<\/td>\n<\/tr>\n<tr>\n<td>95<\/td>\n<td>Purwono, B., Kumar, N., Black, D.S.C.<\/td>\n<td>Mannich reactions of activated 4,6-dimethoxyindoles<\/td>\n<td>Arkivoc,\u00a02021, 2022(4), A2<\/td>\n<\/tr>\n<tr>\n<td>96<\/td>\n<td>Purwono, B., Kumar, N., Black, D.StC.<\/td>\n<td>Approaches to calix[3]indoles from activated indole carboxylic acids<\/td>\n<td>Arkivoc,\u00a02021, 2022(4)<\/td>\n<\/tr>\n<tr>\n<td>97<\/td>\n<td>Purwono, B., Nurohmah, B.A., Fathurrohman, P.Z., Syahri, J.<\/td>\n<td>Some 2-arylbenzimidazole derivatives as an antimalarial agent: Synthesis, activity assay, molecular docking and pharmacological evaluation<\/td>\n<td>Rasayan Journal of Chemistry,\u00a02021, 14(1), pp. 94\u2013100<\/td>\n<\/tr>\n<tr>\n<td>98<\/td>\n<td>Purwono, B., Nurohmah, B.A., Suharman<\/td>\n<td>Colorimetric amine detection by vanillin-hydrazone derivatives during chicken meat spoilage<\/td>\n<td>Sains Malaysiana,\u00a02021, 50(4), pp. 989\u2013996<\/td>\n<\/tr>\n<tr>\n<td>99<\/td>\n<td>Puspitasari, A.D., Pranowo, H.D., Astuti, E., Wahyuningsih, T.D.<\/td>\n<td>Design of New Chlorochalcone Derivatives as Potential Breast Anticancer Compound Based on QSAR Analysis and Molecular Docking Study<\/td>\n<td>Chiang Mai University Journal of Natural Sciences,\u00a02021, 20(3), pp. 1\u201315, e2021070<\/td>\n<\/tr>\n<tr>\n<td>100<\/td>\n<td>Raharjo, T.J., Utami, W.M., Fajr, A., Haryadi, W., Swasono, R.T.<\/td>\n<td>Antibacterial peptides from tryptic hydrolysate of Ricinus communis seed protein fractionated using cation exchange chromatography<\/td>\n<td>Indonesian Journal of Pharmacy,\u00a02021, 32(1), pp. 74\u201385<\/td>\n<\/tr>\n<tr>\n<td>101<\/td>\n<td>Rakhmawati, A., Wahyuni, E.T., Yuwono, T.<\/td>\n<td>Thermophilic bacteria isolated from mount merapi, java, indonesia as a potential lead bioremediation agent<\/td>\n<td>Biodiversitas,\u00a02021, 22(6), pp. 3101\u20133110<\/td>\n<\/tr>\n<tr>\n<td>102<\/td>\n<td>Rakhmawati, A., Wahyuni, E.T., Yuwono, T.<\/td>\n<td>Potential application of thermophilic bacterium Aeribacillus pallidus MRP280 for lead removal from aqueous solution<\/td>\n<td>Heliyon,\u00a02021, 7(11), e08304<\/td>\n<\/tr>\n<tr>\n<td>103<\/td>\n<td>Rakhmawati, A., Wahyuni, E.T., Yuwono, T.<\/td>\n<td>Lead uptake capacity of thermophilic bacteria Aeribacillus pallidus strains isolated from Merapi volcano, Indonesia<\/td>\n<td>Korean Journal of Microbiology,\u00a02021, 57(2), pp. 91\u201398<\/td>\n<\/tr>\n<tr>\n<td>104<\/td>\n<td>Rasyid, H., Purwono, B., Pranowo, H.D.<\/td>\n<td>Design of new quinazoline derivative as EGFR (Epidermal growth factor receptor) inhibitor through molecular docking and dynamics simulation<\/td>\n<td>Indonesian Journal of Chemistry,\u00a02021, 21(1), pp. 201\u2013211<\/td>\n<\/tr>\n<tr>\n<td>105<\/td>\n<td>Reningtyas, R., Rahayuningsih, E., Kusumastuti, Y., Kartini, I.<\/td>\n<td>Application of zinc oxide nanoparticles and nanochitosan to enhance the light fastness of cotton dyed with natural indigo | Aplikasi zink oksida nanopartikel dan nano kitosan untuk meningkatkan ketahanan pudar kain yang diwarnai indigo asli<\/td>\n<td>Malaysian Journal of Analytical Sciences,\u00a02021, 25(5), pp. 882\u2013894<\/td>\n<\/tr>\n<tr>\n<td>106<\/td>\n<td>Sakti, S.C.W., Wijaya, R.A., Indrasari, N., &#8230; Nuryono, Chen, C.-H.<\/td>\n<td>Magnetic hollow buoyant alginate beads achieving rapid remediation of oil contamination on water<\/td>\n<td>Journal of Environmental Chemical Engineering,\u00a02021, 9(1), 104935<\/td>\n<\/tr>\n<tr>\n<td>107<\/td>\n<td>Santosa, S.J., Astuti, D.P.<\/td>\n<td>Reusable high performance of calcined Mg\/Al hydrotalcite for the removal of Navy Blue and Yellow F3G dyes<\/td>\n<td>Chinese Journal of Chemical Engineering,\u00a02021, 38, pp. 247\u2013254<\/td>\n<\/tr>\n<tr>\n<td>108<\/td>\n<td>Santosa, S.J., Krisbiantoro, P.A., Minh Ha, T.T., Thanh Phuong, N.T., Gusrizal, G.<\/td>\n<td>Composite of magnetite and Zn\/Al layered double hydroxide as a magnetically separable adsorbent for effective removal of humic acid<\/td>\n<td>Colloids and Surfaces A: Physicochemical and Engineering Aspects,\u00a02021, 614, 126159<\/td>\n<\/tr>\n<tr>\n<td>109<\/td>\n<td>Santosa, S.J., Krisbiantoro, P.A., Yuniarti, M., Kustomo, Koesnarpardi, S.<\/td>\n<td>Magnetically separable humic acid-functionalized magnetite for reductive adsorption of tetrachloroaurate(III) ion in aqueous solution<\/td>\n<td>Environmental Nanotechnology, Monitoring and Management,\u00a02021, 15, 100454<\/td>\n<\/tr>\n<tr>\n<td>110<\/td>\n<td>Sari, M.K., Basuki, R., Rusdiarso, B.<\/td>\n<td>Adsorption of Pb(II) from Aqueous Solutions onto Humic Acid Modified by Urea-Formaldehyde: Effect of pH, Ionic Strength, Contact Time, and Initial Concentration<\/td>\n<td>Indonesian Journal of Chemistry,\u00a02021, 21(6), pp. 1371\u20131388<\/td>\n<\/tr>\n<tr>\n<td>111<\/td>\n<td>Setiawan, E., Wijaya, K., Mudasir, M.<\/td>\n<td>QSAR modeling for predicting the antifungal activities of gemini imidazolium surfactants against Candida albicans using GA-MLR methods<\/td>\n<td>Journal of Applied Pharmaceutical Science,\u00a02021, 11(4), pp. 022\u2013027<\/td>\n<\/tr>\n<tr>\n<td>112<\/td>\n<td>Setiawan, E., Wijaya, K., Mudasir, M.<\/td>\n<td>Generic QSPR study for predicting critical micelle concentration of gemini cationic surfactants using the online chemical modeling environment (OCHEM)<\/td>\n<td>AIP Conference Proceedings,\u00a02021, 2349, 020027<\/td>\n<\/tr>\n<tr>\n<td>113<\/td>\n<td>Setiawati, S., Nuryastuti, T., Sholikhah, E.N., &#8230; Jumina, Mustofa<\/td>\n<td>The potency of actinomycetes extracts isolated from pramuka island, jakarta, indonesia as antimicrobial agents<\/td>\n<td>Biodiversitas,\u00a02021, 22(3), pp. 1104\u20131111<\/td>\n<\/tr>\n<tr>\n<td>114<\/td>\n<td>Shofwunnada, S., Aprilita, N.H., Mudasir, M.<\/td>\n<td>Adsorption of silver(I) on dithizone-immobilized coal fly ash<\/td>\n<td>Key Engineering Materials,\u00a02021, 884 KEM, pp. 17\u201324<\/td>\n<\/tr>\n<tr>\n<td>115<\/td>\n<td>Sholichah, E., Desnilasari, D., Subekti, R.J., Karim, M.A., Purwono, B.<\/td>\n<td>The influence of coffee cherry fermentation on the properties of Cascara arabica from Subang, West Java<\/td>\n<td>IOP Conference Series: Materials Science and Engineering,\u00a02021, 1011(1), 012006<\/td>\n<\/tr>\n<tr>\n<td>116<\/td>\n<td>Sohilait, M.R., Pranowo, H.D., Haryadi, W.<\/td>\n<td>Synthesis of curcumin from piperonal and its spectrometric characterization using dft-b3lyp\/6-31g(D) method<\/td>\n<td>Rasayan Journal of Chemistry,\u00a02021, 14(2), pp. 1307\u20131311<\/td>\n<\/tr>\n<tr>\n<td>117<\/td>\n<td>Souhoka, F.A., Pranowo, H.D., Wahyuningsih, T.D.<\/td>\n<td>Synthesis of methylcellulose using dimethyl carbonate with conventional and green methods<\/td>\n<td>Key Engineering Materials,\u00a02021, 884 KEM, pp. 379\u2013386<\/td>\n<\/tr>\n<tr>\n<td>118<\/td>\n<td>Stiawan, A., Sholikhah, E.N., Kurniawan, Y.S., Priastomo, Y., Jumina<\/td>\n<td>Synthesis, cytotoxicity assay, and molecular docking study of hydroxychalcone derivatives as potential tyrosinase inhibitors<\/td>\n<td>Journal of Chinese Pharmaceutical Sciences,\u00a02021, 30(8), pp. 634\u2013644<\/td>\n<\/tr>\n<tr>\n<td>119<\/td>\n<td>Sugara, T.H., Jumina, Solikhah, E.N., Pranowo, H.D.<\/td>\n<td>Qsar and molecular docking approaches for development of haloxanthones as the anticancer agent against mcf-7 and hepg2<\/td>\n<td>Rasayan Journal of Chemistry,\u00a02021, 14(3), pp. 1927\u20131937<\/td>\n<\/tr>\n<tr>\n<td>120<\/td>\n<td>Suherman, S., Hakim, M.S., Kuncaka, A.<\/td>\n<td>Optical chemical sensor based on 2,2-furildioxime in sol-gel matrix for determination of ni2+\u00a0in water<\/td>\n<td>Processes,\u00a02021, 9(2), pp. 1\u20139, 280<\/td>\n<\/tr>\n<tr>\n<td>121<\/td>\n<td>Suherman, S., Hasso, S.M., Aprilita, N.H., Morita, K., Mizuguchi, H.<\/td>\n<td>Development of soil sample preparation by means acid digestion without heating with teflon method for nickel analysis<\/td>\n<td>Key Engineering Materials,\u00a02021, 884 KEM, pp. 342\u2013347<\/td>\n<\/tr>\n<tr>\n<td>122<\/td>\n<td>Suherman, S., Nurwijaya, Y., Wahyuni, E.T., &#8230; Morita, K., Oki, Y.<\/td>\n<td>Effect of ammonium citrate concentration variation on the carbon dots colistin modification for Escherichia coli detection<\/td>\n<td>Moroccan Journal of Chemistry,\u00a02021, 9(4), pp. 754\u2013761<\/td>\n<\/tr>\n<tr>\n<td>123<\/td>\n<td>Sukamto, Kamiya, Y., Rusdiarso, B., Nuryono<\/td>\n<td>Highly Effective Magnetic Silica-Chitosan Hybrid for Sulfate Ion Adsorption<\/td>\n<td>Environmental Science and Engineering,\u00a02021, pp. 203\u2013216<\/td>\n<\/tr>\n<tr>\n<td>124<\/td>\n<td>Suratman, A., Adhyana, A.Z., Siswanta, D.<\/td>\n<td>The effect of ctab on bentonite for slow release fertilizer<\/td>\n<td>Key Engineering Materials,\u00a02021, 884 KEM, pp. 226\u2013233<\/td>\n<\/tr>\n<tr>\n<td>125<\/td>\n<td>Suratman, A., Pratiwi, R.C.M., Suraya, T., Wahyuni, E.T.<\/td>\n<td>The effect of glycerol on alginate\/zeolite membranes for selectivity of ch4\/co2 gas<\/td>\n<td>Key Engineering Materials,\u00a02021, 884 KEM, pp. 125\u2013132<\/td>\n<\/tr>\n<tr>\n<td>126<\/td>\n<td>Suryaningtyas, T., Putri, E.F.N., Priatmoko, P., Pranowo, H.D., Raharjo, T.J.<\/td>\n<td>Ion exchange fraction of fish by-products protein as a food protein fortification ingredient<\/td>\n<td>Key Engineering Materials,\u00a02021, 884, pp. 241\u2013250<\/td>\n<\/tr>\n<tr>\n<td>127<\/td>\n<td>Swasdika, F., Trisunaryanti, W., Falah, I.I.<\/td>\n<td>Hydrotreatment of cellulose-derived bio-oil using copper and\/or zinc catalysts supported on mesoporous silica-alumina synthesized from lapindo mud and catfish bone<\/td>\n<td>Indonesian Journal of Chemistry,\u00a02021, 21(2), pp. 268\u2013278<\/td>\n<\/tr>\n<tr>\n<td>128<\/td>\n<td>Trisunaryanti, W., Sumbogo, S.D., Mukti, R.R., &#8230; Hartati, Triyono<\/td>\n<td>Performance of low-content Pd and high-content Co, Ni supported on hierarchical activated carbon for the hydrotreatment of Calophyllum inophyllum oil (CIO)<\/td>\n<td>Reaction Kinetics, Mechanisms and Catalysis,\u00a02021, 134(1), pp. 259\u2013272<\/td>\n<\/tr>\n<tr>\n<td>129<\/td>\n<td>Trisunaryanti, W., Sumbogo, S.D., Novianti, S.A., &#8230; Ulfa, M., Nikmah, Y.L.<\/td>\n<td>ZnO-activated carbon blended as a catalyst for oxidative desulfurization of dibenzothiophene<\/td>\n<td>Bulletin of Chemical Reaction Engineering and Catalysis,\u00a02021, 16(4), pp. 881\u2013887<\/td>\n<\/tr>\n<tr>\n<td>130<\/td>\n<td>Trisunaryanti, W., Triyono, Santoso, N.R., &#8230; Paramesti, C., Fatmawati, D.A.<\/td>\n<td>Enhancement of cobalt concentration supported on mesoporous silica towards the characteristics and activities of catalysts for the conversion of waste coconut oil into gasoline and diesel oil<\/td>\n<td>Indonesian Journal of Chemistry,\u00a02021, 21(3), pp. 527\u2013536<\/td>\n<\/tr>\n<tr>\n<td>131<\/td>\n<td>Trisunaryanti, W., Triyono, T., Hadjarningrum, S.A.N., Fatmawati, D.A.<\/td>\n<td>Activity of ni-nh2\/mesoporous silica material as bifunctional catalyst for hydrocracking of used cooking oil<\/td>\n<td>Key Engineering Materials,\u00a02021, 884 KEM, pp. 83\u201389<\/td>\n<\/tr>\n<tr>\n<td>132<\/td>\n<td>Trisunaryanti, W., Wijaya, K., Triyono, T., Adriani, A.R., Larasati, S.<\/td>\n<td>Green synthesis of hierarchical porous carbon prepared from coconut lumber sawdust as Ni-based catalyst support for hydrotreating Callophyllum inophyllum oil<\/td>\n<td>Results in Engineering,\u00a02021, 11, 100258<\/td>\n<\/tr>\n<tr>\n<td>133<\/td>\n<td>Triyono, T., Trisunaryanti, W., Putri, Y.W., Fatmawati, D.A., Chasanah, U.<\/td>\n<td>Modification of mordenite characters by H2C2O4and\/or NaOH treatments and its catalytic activity test in hydrotreating of pyrolyzed \u03b1-cellulose<\/td>\n<td>Bulletin of Chemical Reaction Engineering and Catalysis,\u00a02021, 16(1), pp. 9\u201321<\/td>\n<\/tr>\n<tr>\n<td>134<\/td>\n<td>Triyono, Trisunaryanti, W., Syoufian, A., &#8230; Suarsih, E., Fatmawati, D.A.<\/td>\n<td>Preparation of co, ni, and zn-based catalyst supported on mesoporous carbon for hydrocracking of pyrolyzed \u03b1-cellulose<\/td>\n<td>Rasayan Journal of Chemistry,\u00a02021, 14(3), pp. 1965\u20131971<\/td>\n<\/tr>\n<tr>\n<td>135<\/td>\n<td>Triyono, Trisunaryanti, W., Syoufian, A., &#8230; Suarsih, E., Fatmawati, D.A.<\/td>\n<td>Preparation of co, ni, and zn-based catalyst supported on mesoporous carbon for hydrocracking of pyrolyzed \u03b1-cellulose<\/td>\n<td>Rasayan Journal of Chemistry,\u00a02021, 14(3), pp. 1965\u20131971<\/td>\n<\/tr>\n<tr>\n<td>136<\/td>\n<td>Ulfa, M., Trisunaryanti, W., Nikmah, Y.N.<\/td>\n<td>Graphitic microporous carbon (GMiC) prepared using bidara leaf powder (Ziziphus mauritania) as a natural template<\/td>\n<td>AIP Conference Proceedings,\u00a02021, 2331, 040040<\/td>\n<\/tr>\n<tr>\n<td>137<\/td>\n<td>Utami, N., Istiningrum, R.B., Rusdiarso, B., Nuryono<\/td>\n<td>Recovery of au(Iii) from gold mining rock with silica\/chitosan coated on iron sand magnetic material<\/td>\n<td>Key Engineering Materials,\u00a02021, 884 KEM, pp. 90\u201397<\/td>\n<\/tr>\n<tr>\n<td>138<\/td>\n<td>Wahyuni, E.T., Nurhikmatillah, A., Kurniasari, H., Siswanta, D.<\/td>\n<td>Detoxification of As(III) in aqueous media by using photo-Fenton method<\/td>\n<td>Global Nest Journal,\u00a02021, 23(4), pp. 550\u2013555<\/td>\n<\/tr>\n<tr>\n<td>139<\/td>\n<td>Wahyuni, E.T., Rahmaniati, T., Hafidzah, A.R., Suherman, S., Suratman, A.<\/td>\n<td>Photocatalysis over N-doped TiO2\u00a0driven by visible light for Pb(II) removal from aqueous media<\/td>\n<td>Catalysts,\u00a02021, 11(8), 945<\/td>\n<\/tr>\n<tr>\n<td>140<\/td>\n<td>Wahyuni, E.T., Rendo, D., Suherman, S.<\/td>\n<td>Removal of methylene blue dye in water by using recoverable natural zeolite\/Fe3O4\u00a0adsorbent<\/td>\n<td>Global Nest Journal,\u00a02021, 23(1), pp. 119\u2013126<\/td>\n<\/tr>\n<tr>\n<td>141<\/td>\n<td>Waskitha, S.S.W., Mulyana, F.E., Riza, N.F., &#8230; Tahir, I., Wahyuningsih, T.D.<\/td>\n<td>Qsar approach and synthesis of chalcone derivatives as antimalarial compound against plasmodium falciparum 3d7 strain<\/td>\n<td>Rasayan Journal of Chemistry,\u00a02021, 14(4), pp. 2363\u20132370<\/td>\n<\/tr>\n<tr>\n<td>142<\/td>\n<td>Widyayanti, O.A., Sudiono, S., Aprilita, N.H.<\/td>\n<td>Adsorption of cd(Ii) ion using \u03b1-cellulose immobilized humic acid with crosslinker agent epichlorohydrin<\/td>\n<td>Key Engineering Materials,\u00a02021, 884 KEM, pp. 39\u201346<\/td>\n<\/tr>\n<tr>\n<td>143<\/td>\n<td>Wijaya, K., Kurniawan, M.A., Saputri, W.D., &#8230; Hariani, P.L., Tikoalu, A.D.<\/td>\n<td>Synthesis of nickel catalyst supported on ZrO2\/SO4pillared bentonite and its application for conversion of coconut oil into gasoline via hydrocracking process<\/td>\n<td>Journal of Environmental Chemical Engineering,\u00a02021, 9(4), 105399<\/td>\n<\/tr>\n<tr>\n<td>144<\/td>\n<td>Wijaya, K., Lammaduma Malau, M.L., Utami, M., &#8230; Rajabathar, J.R., Al-Lohedan, H.A.<\/td>\n<td>Synthesis, characterizations and catalysis of sulfated silica and nickel modified silica catalysts for diethyl ether (Dee) production from ethanol towards renewable energy applications<\/td>\n<td>Catalysts,\u00a02021, 11(12), 1511<\/td>\n<\/tr>\n<tr>\n<td>145<\/td>\n<td>Wijaya, K., Nadia, A., Dinana, A., &#8230; Tikoalu, A.D., Wibowo, A.C.<\/td>\n<td>Catalytic hydrocracking of fresh and waste frying oil over ni-and mo-based catalysts supported on sulfated silica for biogasoline production<\/td>\n<td>Catalysts,\u00a02021, 11(10), 1150<\/td>\n<\/tr>\n<tr>\n<td>146<\/td>\n<td>Wijaya, K., Putri, A.R., Sudiono, S., &#8230; Wibowo, A.C., Saputri, W.D.<\/td>\n<td>Effectively synthesizing so4\/tio2\u00a0catalyst and its performance for converting ethanol into diethyl ether (Dee)<\/td>\n<td>Catalysts,\u00a02021, 11(12), 1492<\/td>\n<\/tr>\n<tr>\n<td>147<\/td>\n<td>Wijayanti, L.W., Swasono, R.T., Lee, W., Jumina, J.<\/td>\n<td>Synthesis and evaluation of chalcone derivatives as novel sunscreen agent<\/td>\n<td>Molecules,\u00a02021, 26(9), 2698<\/td>\n<\/tr>\n<tr>\n<td>148<\/td>\n<td>Windarti, T., Widjijono, Nuryono<\/td>\n<td>Deposition of hydroxyapatite on silica made from rice husk ash to produce the powder component of calcium phosphate cement<\/td>\n<td>Indonesian Journal of Chemistry,\u00a02021, 21(3), pp. 588\u2013597<\/td>\n<\/tr>\n<tr>\n<td>149<\/td>\n<td>Wiratini, N.M., Triyono, T., Trisunaryanti, W., Kuncaka, A.<\/td>\n<td>Graphite\/NiO\/Ni electrode for electro-oxidation of the remazol black 5 dye<\/td>\n<td>Bulletin of Chemical Reaction Engineering and Catalysis,\u00a02021, 16(4), pp. 847\u2013856<\/td>\n<\/tr>\n<tr>\n<td>150<\/td>\n<td>Wulan, F.F., Wahyuningsih, T.D., Jumina, J., Kumar, N.<\/td>\n<td>Synthesis studies of n-acetyl glyoxylamide derivatives using unreactive amines<\/td>\n<td>Key Engineering Materials,\u00a02021, 884 KEM, pp. 312\u2013319<\/td>\n<\/tr>\n<tr>\n<td>151<\/td>\n<td>Wulandari, N.M., Efiyanti, L., Trisunaryanti, W., &#8230; Lailun Ni\u2019mah, Y., Larasati, S.<\/td>\n<td>Effect of CTAB ratio to the characters of mesoporous silica prepared from rice husk ash in the pyrolysis of \u03b1\u2013cellulose<\/td>\n<td>Bulletin of Chemical Reaction Engineering and Catalysis,\u00a02021, 16(3), pp. 632\u2013640<\/td>\n<\/tr>\n<tr>\n<td>152<\/td>\n<td>Yanto, D. H. Y., Guntoro, M. A., Nurhayat, O. D., Anita, S. H., Oktaviani, M., Ramadhan, K. M., Pradipta, M. F., Watanabe, T<\/td>\n<td>Biodegradation and biodetoxification of batik dye wastewater by laccase from Trametes hirsuta EDN 082 immobilised on light expanded clay aggregate<\/td>\n<td>3 Biotech,\u00a02021, 11(5), pp. 247<\/td>\n<\/tr>\n<tr>\n<td>153<\/td>\n<td>Yuanita, E., Ulfa, M., Sudirman, &#8230; Syahri, J., Jumina<\/td>\n<td>Synthesis, Cytotoxic Evaluation and molecular docking of bromo-substituted 1,3,6-trihydroxyxanthone as protein tyrosine kinase inhibitor<\/td>\n<td>Malaysian Journal of Chemistry,\u00a02021, 23(1), pp. 24\u201332<\/td>\n<\/tr>\n<tr>\n<td>154<\/td>\n<td>Yusbarina, Y., Roto, R., Triyana, K.<\/td>\n<td>Hydroxyl functionalized graphene as a superior anode material for electrochemical oxidation of methylene blue<\/td>\n<td>Rasayan Journal of Chemistry,\u00a02021, 14(2), pp. 1140\u20131147<\/td>\n<\/tr>\n<tr>\n<td>155<\/td>\n<td>Yusbarina, Y., Roto, R., Triyana, K.<\/td>\n<td>Stainless steel\/hydroxyl functionalized graphene electrode for electrochemical oxidation of methyl orange<\/td>\n<td>Key Engineering Materials,\u00a02021, 884 KEM, pp. 32\u201338<\/td>\n<\/tr>\n<tr>\n<td>156<\/td>\n<td>Yusniyanti, F., Trisunaryanti, W., Triyono<\/td>\n<td>Acid-alkaline treatment of mordenite and its catalytic activity in the hydrotreatment of bio-oil<\/td>\n<td>Indonesian Journal of Chemistry,\u00a02021, 21(1), pp. 37\u201345<\/td>\n<\/tr>\n<tr>\n<td>157<\/td>\n<td>Zakiah, M., Syarif, R.A., Mustofa, M., &#8230; Fatmasari, N., Sholikhah, E.N.<\/td>\n<td>In vitro antiplasmodial, heme polymerization, and cytotoxicity of hydroxyxanthone derivatives<\/td>\n<td>Journal of Tropical Medicine,\u00a02021, 2021, 8866681<\/td>\n<\/tr>\n<tr>\n<td>158<\/td>\n<td>Zikri, A.T., Pranowo, H.D., Haryadi, W.<\/td>\n<td>Stability, hydrogen bond occupancy analysis and binding free energy calculation from flavonol docked in DAPK1 active site using molecular dynamic simulation approaches<\/td>\n<td>Indonesian Journal of Chemistry,\u00a02021, 21(2), pp. 383\u2013390<\/td>\n<\/tr>\n<\/tbody>\n<\/table>\n","protected":false},"excerpt":{"rendered":"<p>No Penulis Judul Nama Jurnal 1 Adhiputra, R., Utami, M., Suyono, E.A., &#8230; Pratiwi, A.S., Wijaya, K. Simultaneous Extraction and In-Situ Transesterification of Chlorella vulgaris Using Microwave-Assisted Method for Biodiesel Production Korean Journal of Materials Research,\u00a02021, 31(4), pp. 181\u2013187 2 Agustin, S., Wahyuni, E.T., Suparmo, Supriyadi, Cahyanto, M.N. Incorporation of pectin during biosynthesis of bacterial [&hellip;]<\/p>\n","protected":false},"author":1319,"featured_media":0,"parent":0,"menu_order":0,"comment_status":"closed","ping_status":"closed","template":"","meta":{"footnotes":""},"class_list":["post-6064","page","type-page","status-publish","hentry"],"_links":{"self":[{"href":"https:\/\/chemistry.ugm.ac.id\/index.php?rest_route=\/wp\/v2\/pages\/6064","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/chemistry.ugm.ac.id\/index.php?rest_route=\/wp\/v2\/pages"}],"about":[{"href":"https:\/\/chemistry.ugm.ac.id\/index.php?rest_route=\/wp\/v2\/types\/page"}],"author":[{"embeddable":true,"href":"https:\/\/chemistry.ugm.ac.id\/index.php?rest_route=\/wp\/v2\/users\/1319"}],"replies":[{"embeddable":true,"href":"https:\/\/chemistry.ugm.ac.id\/index.php?rest_route=%2Fwp%2Fv2%2Fcomments&post=6064"}],"version-history":[{"count":2,"href":"https:\/\/chemistry.ugm.ac.id\/index.php?rest_route=\/wp\/v2\/pages\/6064\/revisions"}],"predecessor-version":[{"id":6069,"href":"https:\/\/chemistry.ugm.ac.id\/index.php?rest_route=\/wp\/v2\/pages\/6064\/revisions\/6069"}],"wp:attachment":[{"href":"https:\/\/chemistry.ugm.ac.id\/index.php?rest_route=%2Fwp%2Fv2%2Fmedia&parent=6064"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}